Source Intelligence
Sweep 28 Aug 2026 · 00:00Z Build v2.1.250 478 read Stable v2.1.236 Latest v2.1.250 Next v2.1.250 Feeds RSS JSON llms.txt

DisclaimerUnofficial, and not affiliated with Anthropic. Nearly all of this is read straight out of what ships: npm bundles, captured prompts, published docs. Anthropic's own notes go in verbatim, marked as theirs. The rest is my reading, and every entry carries the strings behind it. If one looks wrong, vote it down and say why.

Prompt capture

ScheduleWakeup tool description

27 model strings share this prompt, byte for byte.

v2.1.235 25 lines 2933 chars sha256 ff980d5a1a29 Plain text Whole capture

1Schedule when to resume work in /loop dynamic mode — the user invoked /loop without an interval, asking you to self-pace iterations of a specific task.
3Do NOT schedule a short-interval wakeup to poll for background work you started — when harness-tracked work finishes, you are re-invoked automatically, so polling is wasted. Instead schedule a long fallback (1200s+) so the loop survives if the work hangs or never notifies. The exception is external work the harness cannot track (a CI run, a deploy, a remote queue) — there, pick a delay matched to how fast that state actually changes.
5Pass the same /loop prompt back via `prompt` each turn so the next firing repeats the task. For an autonomous /loop (no user prompt), pass the literal sentinel `<<autonomous-loop-dynamic>>` as `prompt` instead — the runtime resolves it back to the autonomous-loop instructions at fire time. (There is a similar `<<autonomous-loop>>` sentinel for CronCreate-based autonomous loops; do not confuse the two — ScheduleWakeup always uses the `-dynamic` variant.) To end the loop, call this tool with `stop: true` (omit every other field) — the loop ends immediately and no further wakeups fire.
7## Picking delaySeconds
9This session's requests use the default 5-minute Anthropic prompt-cache TTL. Sleeping past 300 seconds means the next wake-up reads your full conversation context uncached — slower and more expensive. So the natural breakpoints:
11- **Under 5 minutes (60s–270s)**: cache stays warm. Right for actively polling external state the harness can't notify you about — a CI run, a deploy, a remote queue.
12- **5 minutes to 1 hour (300s–3600s)**: pay the cache miss. Right when there's no point checking sooner — waiting on something that takes minutes to change, genuinely idle, or as the long fallback heartbeat when something else is the primary wake signal.
14**Don't pick 300s.** It's the worst-of-both: you pay the cache miss without amortizing it. If you're tempted to "wait 5 minutes," either drop to 270s (stay in cache) or commit to 1200s+ (one cache miss buys a much longer wait). Don't think in round-number minutes — think in cache windows.
16For idle ticks with no specific signal to watch, default to **1200s–1800s** (20–30 min). The loop checks back, you don't burn cache 12× per hour for nothing, and the user can always interrupt if they need you sooner.
18Think about what you're actually waiting for, not just "how long should I sleep." If you're polling a CI run that takes ~8 minutes, sleeping 60s burns the cache 8 times before it finishes — sleep ~270s twice instead.
20The runtime clamps to [60, 3600], so you don't need to clamp yourself.
22## The reason field
24One short sentence on what you chose and why. Goes to telemetry and is shown back to the user. "watching CI run" beats "waiting." The user reads this to understand what you're doing without having to predict your cadence in advance — make it specific.